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用于微型热电模块的柔性碳纳米管外延生长纳米晶体

Flexible Carbon Nanotube-Epitaxially Grown Nanocrystals for Micro-Thermoelectric Modules.

作者信息

Jin Qun, Zhao Yang, Long Xuehao, Jiang Song, Qian Cheng, Ding Feng, Wang Ziqiang, Li Xiaoqi, Yu Zhi, He Juan, Song Yujie, Yu Hailong, Wan Ye, Tai Kaiping, Gao Ning, Tan Jun, Liu Chang, Cheng Hui-Ming

机构信息

Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China.

University of Chinese Academy of Sciences, Shenyang, 110016, China.

出版信息

Adv Mater. 2023 Nov;35(46):e2304751. doi: 10.1002/adma.202304751. Epub 2023 Oct 15.

Abstract

Flexible thermoelectric materials have attracted increasing interest because of their potential use in thermal energy harvesting and high-spatial-resolution thermal management. However, a high-performance flexible micro-thermoelectric device (TED) compatible with the microelectronics fabrication process has not yet been developed. Here a universal epitaxial growth strategy is reported guided by 1D van der Waals-coupling, to fabricate freestanding and flexible hybrids comprised of single-wall carbon nanotubes and ordered (Bi,Sb) Te nanocrystals. High power factors ranging from ≈1680 to ≈1020 µW m K in the temperature range of 300-480 K, combined with a low thermal conductivity yield a high average figure of merit of ≈0.81. The fabricated flexible micro-TED module consisting of two p-n couples of freestanding thermoelectric hybrids has an unprecedented open circuit voltage of ≈22.7 mV and a power density of ≈0.36 W cm under ≈30 K temperature difference, and a net cooling temperature of ≈22.4 K and a heat absorption density of ≈92.5 W cm .

摘要

柔性热电材料因其在热能收集和高空间分辨率热管理方面的潜在应用而受到越来越多的关注。然而,尚未开发出与微电子制造工艺兼容的高性能柔性微热电装置(TED)。在此,报道了一种以一维范德华耦合为指导的通用外延生长策略,用于制造由单壁碳纳米管和有序(Bi,Sb)Te纳米晶体组成的独立式柔性混合材料。在300 - 480 K的温度范围内,功率因数约为1680至1020 μW m⁻¹ K⁻²,结合低热导率,产生了约0.81的高平均优值。由两个独立式热电混合材料的p - n对组成的柔性微TED模块,在约30 K的温差下具有前所未有的约22.7 mV开路电压和约0.36 W cm⁻²的功率密度,以及约22.4 K的净冷却温度和约92.5 W cm⁻²的热吸收密度。

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